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N1570

2 Channel 15 kV/1 mA (10 W) NIM HV Power Supply Module (USB/Ethernet/T.screen)

Datasheet

Home NIM / Up to 15 kV Reversible Polarity - N1570 N1570

Photo of N1570
Photo of N1570
Photo of N1570
Photo of N1570
  • 2 independent channels in 2U NIM module

  • 15 kV / 1mA output range

  • Max channel power: 10W (< 10kV) or 7W (> 10kV)

  • Channels with individually selectable positive or negative polarity

  • LEMO HV coaxial output connectors

  • Common floating return

  • Low Ripple

  • Under/over-voltage alert, overcurrent and max. voltage protection

  • Interlock logic for board enable and Individual channel kill

  • 20 nA Current monitor resolution (with x10 Imon-Zoom: 2 nA)

  • 2.8″ color touch screen display

  • Local and Remote control (USB2.0/Ethernet)

  • Daisy-chain capability

  • Software Tools for easy channel management

The CAEN Mod.N1570 provides 2 independent High Voltage channels in a double width NIM mechanics. Each channel can provide a ± 15 kV max voltage, 1 mA max current and a 10 W max power. The output polarity is independently selectable for each channel. Channels have common floating return (common return insulated from the crate ground); HV outputs are delivered through Lemo HV connectors. The HV output Ramp-up and Ramp-down rates may be selected independently for each channel in the range 1÷500 V/s in 1 V/s steps.

LEMO HV connector

NIM double width, 2 channels for Mod. N1570

Consult our connectors reference page for technical information.

The module features 20 nA Iset/Imon resolution. Zoom (x 10) for Imon increases resolution to 2 nA. Module control can take place either locally thanks to a 2.8” Touchscreen Graphic color LCD display with a completely redesigned user interface or remotely, via USB or Ethernet, taking advantage of the new GECO2020 Control Software.

A complete set of free software Tools is available to control this unit: GECO2020 with user friendly GUI and CAEN HV Wrapper library for custom SW development. EPICS and LabVIEW also supported.

Safety features allows the module to perform as a current generator and includes:

Channels

can be enabled or disabled through the Global Interlock logic.

Overvoltage and Undervoltage warning

when the output voltage differs from the programmed value by more than 2% of set value (minimum 10V).

Overcurrent detection

if a channel tries to draw a current larger than its programmed limit, it enters TRIP status, keeping the maximum allowed value for a programmable time (TRIP), before being switched off.

Hardware VMAX

Programmable VMAX protection limit.

Available Options:

  • A1480 DC Input Power Equalizer.

Software

CAEN HV Wrapper Library

Library for CAEN Power Supply Control

GECO2020

GEneral COntrol Software for CAEN HV Power Supplies

EPICS IOC (PSM Power Supply Modules)

EPICS IOC for Power Supply Modules

LabVIEW Driver (PSM – Power Supply Modules)

LabVIEW Instrument Driver for Power Supply Modules

Accessories

A1480

A1480

DC Power Input Equalizer for N14XX Family
HV CABLES

HV CABLES

High Voltage Cable Assemblies

Ordering Options

Code Description
WN1570XAAAAA

N1570 – 2 Channel NIM Programmable High Voltage Power Supply (± 15 kV 1mA, 10W Max)

RoHS

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    Image
    Name
    No. of Channels
    Max Output V
    Max Output I
    Vset/Vmon Resolution
    Iset/Imon Resolution
    Max. Ramp Up/Down Rate
    Ripple Typ (>1kHz)
    Connectors
    Max Power per Channel
    Features
    N1570

    N1570

    2

    ±15000 V

    1 mA

    0.5 V

    Iset: 20 nA <br>Imon: 20 / 2 nA

    500 V/s

    < 4-20 mVpp

    HV LEMO

    10 mW

    Common Floating Return

    Image
    Name
    No. of Channels
    Max Output V
    Max Output I
    Vset/Vmon Resolution
    Iset/Imon Resolution
    Max. Ramp Up/Down Rate
    Ripple Typ (>1kHz)
    Connectors
    Max Power per Channel
    Features
    N1471ET

    N1471ET

    4

    ±5500 V

    300 μA

    0.1 V

    Iset: 5 nA <br>Imon: 5 / 0.5 nA

    500 V/s

    < 3 mVpp

    SHV

    1.65 W

    Common Floating Return

    N1419

    N1419

    4 /2 / 1

    ±500 V

    20 μA

    0.01 V

    Iset: 5 nA <br>Imon: 5 / 0.5 nA

    100 V/s

    < 3 mVpp

    SHV

    0.1 W

    Common Floating Return

    N1471

    N1471

    4 /2 / 1

    ±5500 V

    300 μA

    0.1 V

    Iset: 5 nA <br>Imon: 5 / 0.5 nA

    500 V/s

    < 3 mVpp

    SHV

    1.65 W

    Common Floating Return

    N1470

    N1470

    4 /2 / 1

    ±8000 V

    3 mA

    0.2 V

    Iset: 50 nA <br>Imon: 50 / 5 nA

    500 V/s

    < 5-10 mVpp

    SHV

    9 W (< 3 kV) <br>8 W (> 3 kV)

    Common Floating Return<br>N1470AL: local control only<br>N1470AR: remote control only

    N1471HET

    N1471HET

    4

    ±5500 V

    20 μA

    0.1 V

    Iset: 1 nA <br>Imon: 1 / 0.05 nA

    500 V/s

    < 2 mVpp

    SHV

    110 mW

    Common Floating Return

    NDT1471

    NDT1471

    4

    ±5500 V

    300 μA

    0.1 V

    Iset: 5 nA <br>Imon: 5 / 0.5 nA

    500 V/s

    < 3 mVpp

    SHV

    1.65 W

    Common Floating Return <br>NIM/Desktop

    N1570

    N1570

    2

    ±15000 V

    1 mA

    0.5 V

    Iset: 20 nA <br>Imon: 20 / 2 nA

    500 V/s

    < 4-20 mVpp

    HV LEMO

    10 mW

    Common Floating Return

    NDT1419

    NDT1419

    4

    ±500 V

    20 μA

    0.01 V

    Iset: 5 nA <br>Imon: 5 / 0.5 nA

    100 V/s

    < 3 mVpp

    SHV

    0.1 W

    Common Floating Return <br>NIM/Desktop

    NDT1471H

    NDT1471H

    4

    ±5500 V

    20 μA

    0.1 V

    Iset: 1 nA <br>Imon: 1 / 0.05 nA

    500 V/s

    < 2 mVpp

    SHV

    110 mW

    Common Floating Return <br>NIM/Desktop

    N1471H

    N1471H

    4 /2 / 1

    ±5500 V

    20 μA

    0.1 V

    Iset: 1 nA <br>Imon: 1 / 0.05 nA

    500 V/s

    < 2 mVpp

    SHV

    110 mW

    Common Floating Return

    N1470ET

    N1470ET

    4

    ±8000 V

    3 mA

    0.2 V

    Iset: 50 nA <br>Imon: 50 / 5 nA

    500 V/s

    < 5-10 mVpp

    SHV

    9 W (< 3 kV) <br>8 W (> 3 kV)

    Common Floating Return

    NDT1470

    NDT1470

    4

    ±8000 V

    3 mA

    0.2 V

    Iset: 50 nA <br>Imon: 50 / 5 nA

    500 V/s

    < 5-10 mVpp

    SHV

    9 W (< 3 kV) <br>8 W (> 3 kV)

    Common Floating Return NIM/Desktop

    N1419ET

    N1419ET

    4

    ±500 V

    20 μA

    0.01 V

    Iset: 5 nA <br>Imon: 5 / 0.5 nA

    100 V/s

    < 3 mVpp

    SHV

    0.1 W

    Common Floating Return

    N1410

    N1410

    4

    ±1000 V

    200 μA

    20 mV

    Iset: 5 nA <br>Imon: 5 / 0.5 nA

    100 V/s

    < 3 mVpp

    SHV

    200 mW

    Common Floating Return

    Technical Specifications

    Close

    Packaging

    Double width NIM mechanics. Weight: ~2.6kg

    Output channels

    2 channels, Common Floating Return, LEMO HV connector Positive or Negative Polarity (requires internal setting)

    Output ranges

    • 15 kV / 1 mA (IMonRange = High)
    • 15 kV / 100 µA (IMonRange = Low) – Imon Zoom Active

    Max. Ch. Output Power

    • 10 W (Vset < 10 kV)
    • 7 W (Vset > 10 kV)

    Vset Resolution

    400 mV

    Vmon Resolution

    500 mV

    Iset Resolution

    20 nA

    Imon Resolution

    • 20 nA (IMonRange = High)
    • 2 nA (IMonRange = Low) – Imon Zoom Active

    Vmax

    0 ÷ 15100 V
    Absolute maximum HV level that the channel is allowed to reach, independently from the preset value Vset. Output voltage cannot exceed the preset value Vmax. The accuracy is 1 % ± 5 V

    Vmax resolution

    ± 1 V

    Alarm output

    Open collector, 100 mA maximum sink current

    Interlock input

    LOW: < 1 V; current~5 mA; HIGH: 4÷6 V

    Ramp Up/Down

    1÷500 Volt/s, 1 Volt/s step

    Trip

    • Max. time an “overcurrent” can last (seconds). A channel in “overcurrent” works as a current generator; output voltage varies in order to keep the output current lower than the programmed value.
    • “Overcurrent” lasting more than set value (1 to 9999) causes the channel to “trip”.
    • Output voltage will drop to zero either at the Ramp-down rate or at the fastest available rate, depending on Power Down setting; in both cases the channel is put in the OFF state.
    • Trip range: 0 ÷ 999.9 s; 1000 s = INFINITE. Step = 0.1 s (If trip= INFINITE, “overcurrent” lasts indefinitely)

    Voltage Ripple

    20 ÷ 1000Hz

    • 7 kV / 250 µA. Typical: 7 mVpp / Maximum: 10 mVpp
    • 10 kV / 350 µA. Typical: 12 mVpp / Maximum: 15 mVpp
    • 14 kV / 500 µA. Typical: 20 mVpp / Maximum: 25 mVpp
    1 ÷ 20000 kHz

    • 7 kV / 250 µA. Typical: 4 mVpp / Maximum: 10 mVpp
    • 10kV / 350 µA. Typical: 6 mVpp / Maximum: 15 mVpp
    • 14kV / 500 µA. Typical: 20 mVpp / Maximum: 25 mVpp

    Vmon vs. Vout Accuracy

    ±0.02% of read value ±2V

    Vset vs. Vout Accuarcy

    ±0.02% of set value ±2V

    Imon vs. Iout Accuracy

    • ±2% of read value ±1 µA (IMonRange = High)
    • ±2% of read value ±100 nA (IMonRange = Low) – Imon Zoom Active

    Iset vs. Iout Accuracy

    • ±2% of read value ±1 µA (IMonRange = High)
    • ±2% of read value ±100 nA (IMonRange = Low) – Imon Zoom Active

    Humidity range

    0 ÷ 80%

    Storage temperature

    -10 ÷ 70°C

    Vout / Temperature coefficient

    max. 50 ppm/°C

    Imon / Temperature coeff.

    max 100 ppm/°C; max 300 ppm/°C with Imon zoom5

    Longterm stab. Vout vs. Vset

    ± 0.02% (after one week @ constant temperature)

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